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Water Activity and Freezing Points in Aqueous Solutions of Manganese Nitrate: Experimental and Modeling
Authors:Mouad Arrad  Mehriban Aliyeva  Sérgio M Vilas-Boas  Mohammed Kaddami  Hannu Sippola  Pekka Taskinen  Simão P Pinho
Institution:1.Department of Process Engineering,National School of Mines of Rabat,Rabat,Morocco;2.LaboratoryPhysical Chemistry of Processes and Materials, Faculty of Science and Technology,University Hassan 1,Settat,Morocco;3.Associate Laboratory LSRE-LCM, Departamento de Tecnologia Química e Biológica,Instituto Politécnico de Bragan?a,Bragan?a,Portugal;4.Department of Chemical and Metallurgical Engineering, Metallurgical Thermodynamics and Modeling,Aalto University School of Chemical Engineering,Aalto,Finland;5.FCG Design and Engineering,Helsinki,Finland;6.Centro de Investiga??o de Montanha CIMO, Instituto Politécnico de Bragan?a,Bragan?a,Portugal
Abstract:The water activities of manganese nitrate solutions were measured using a humidity sensor instrument up to almost the saturation molality at 298.15 K; the thermodynamic properties of the system were described by the Pitzer model and specific interaction theory (SIT). The evaluation of the ion interaction parameters for the Pitzer model and SIT were carried out using experimental freezing points and osmotic coefficients of manganese nitrate aqueous solutions, collected from the open literature, and the water activity data measured in this work. A set of Pitzer and SIT parameters were estimated using a temperature dependency, that enables us to cover wider temperature ranges, and consequently calculate system properties to higher molalities. Both approaches represent very satisfactorily, and with similar accuracy, the experimental data and the calculated manganese nitrate molal activity coefficients are comparable to those already published for analogous systems. Additionally, the Pitzer model was also able to calculate the ice curve and the solubility branch of manganese nitrate hexahydrate up to a salt solution 6.5 mol·kg?1.
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